Anomaly detection system for secondary battery
US-11867503-B2 · Jan 9, 2024 · US
US11628867B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11628867-B2 |
| Application number | US-202117327827-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 24, 2021 |
| Priority date | Sep 22, 2020 |
| Publication date | Apr 18, 2023 |
| Grant date | Apr 18, 2023 |
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The present disclosure discloses a monitoring device for internal deformation and fine particle loss of a railway subgrade, relating to the field of monitoring devices. The monitoring device includes an internal damage monitoring device arranged in a subgrade ballast layer. The internal damage monitoring device is connected to a resistance acquisition instrument through a wire. The resistance acquisition instrument is in wireless connection with a resistance signal receiver. The monitoring device for internal deformation and fine particle loss of a railway subgrade provided by the present disclosure can remotely realize real-time continuous monitoring of the deformation and fine particle loss inside the railway subgrade under a rail transit load, is economical and convenient, and has high practice value.
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What is claimed is: 1. A monitoring device for internal deformation and fine particle loss of a railway subgrade, comprising an internal damage monitoring device arranged in a subgrade ballast layer, wherein the internal damage monitoring device is connected to a resistance acquisition instrument through a wire; the resistance acquisition instrument is in wireless connection with a resistance signal receiver, wherein the internal damage monitoring device comprises two loading plates that are symmetrically arranged up and down; a geomembrane bag is connected between the two loading plates; a monitoring device is arranged in the geomembrane bag; the monitoring device comprises multiple intelligent conductive coarse particles that are arranged in a superposed manner in sequence; a gap between two adjacent intelligent conductive coarse particles is filled with fine sand; multiple measurement points are arranged on the monitoring device; conductive adhesive tapes are arranged at the positions of the measurement points; the conductive adhesive tapes are connected to the intelligent conductive coarse particles located at the measurement points; the conductive adhesive tapes are connected to the resistance acquisition instrument. 2. The monitoring device for internal deformation and fine particle loss of a railway subgrade according to claim 1 , wherein the intelligent conductive coarse particles are of spherical structures, comprising crushed stones; the crushed stones are externally coated with a conductive mixture; the mixture comprises rubber, high-density polyethylene, carbon black, and graphene that are mixed in a molten state. 3. The monitoring device for internal deformation and fine particle loss of a railway subgrade according to claim 2 , wherein the rubber, the high-density polyethylene, the carbon black, and the graphene in the conductive mixture are in the mass ratio of 20%:20%:50%:10%. 4. The monitoring device for internal deformation and fine particle loss of a railway subgrade according to claim 1 , wherein seven layers of conductive adhesive tapes in total are arranged on the monitoring device from bottom to top; the distance between two adjacent conductive adhesive tapes between from the first layer and the sixth layer from bottom to top is 20 cm; the distance between the sixth layer of the conductive adhesive tape and the seventh layer of the conductive adhesive tape is 25 cm.
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